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首页> 外文期刊>Sensors and Actuators >UV-activated gold decorated rGO/ZnO heterostructured nanocomposite sensor for efficient room temperature H_2 detection
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UV-activated gold decorated rGO/ZnO heterostructured nanocomposite sensor for efficient room temperature H_2 detection

机译:紫外激活金修饰的rGO / ZnO异质结构纳米复合传感器,可有效检测室温H_2

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摘要

Extended surface area in addition to higher conductivity and abundant free electrons/holes generation has been key players for any efficient sensor design. Therefore, contribution from graphene as highest conductive material and plasmonics from gold (Au) were expected to facilitate efficient zinc oxides (ZnO) nanostructures-based Hydrogen gas detection. We have presented herewith a facile route to synthesize ZnO nanosheets from elongated nanoblocks of the same in presence of reduced graphene oxide (rGO) under laser ablation environment. Au decorated such rGO/ZnO heterostructured nanosheets were found to be highly selective and sensitive to H-2 detection under ultraviolet radiation at room temperature (RT). A detailed investigation was carried out to confirm topographic evolution through high resolution scanning electron microscopy. Optical band gap and infrared absorption of as-synthesized specimens at different stages were investigated further in addition to structural confirmation using X-ray diffraction analysis. Raman spectroscopy, a complementary technique was utilized to investigate the specimens at different stages too. SEM-aided elemental analysis inferred that gold nanoparticles were homogeneously distributed over the rGO/ZnO heterostructure. A custom-made setup designed at our disposal were utilized to understand the selectivity and sensitivity of as-fabricated heterostructure for H-2 detection. The H-2 gas sensing properties of Au nanoparticles decorated rGO/ZnO heterostructure were investigated at RT under UV irradiation and compared with those observed using pristine ZnO nanostructure at high working temperature. A plausible mechanism was illustrated with reference to well-known 'spell-over' scenario usually observed in plasmonic sensors.
机译:除了更高的电导率和丰富的自由电子/空穴生成之外,扩展的表面积一直是任何高效传感器设计的关键因素。因此,石墨烯作为最高导电材料的贡献和金(Au)的等离激元的贡献有望促进基于氧化锌(ZnO)纳米结构的高效氢气检测。我们在此提出了一种在激光烧蚀环境下从还原的氧化石墨烯(rGO)存在下,从细长的纳米块合成ZnO纳米片的简便方法。发现金装饰的这种rGO / ZnO异质结构纳米片具有很高的选择性,并且在室温(RT)的紫外线辐射下对H-2检测敏感。进行了详细的研究,以通过高分辨率扫描电子显微镜确认地形的演变。除了使用X射线衍射分析进行结构确认外,还进一步研究了合成样品在不同阶段的光学带隙和红外吸收。拉曼光谱法是一种补充技术,它也用于研究不同阶段的标本。 SEM辅助元素分析推断金纳米颗粒均匀分布在rGO / ZnO异质结构上。我们利用专为我们量身定制的定制装置来了解用于H-2检测的预制异质结构的选择性和灵敏度。研究了金纳米颗粒修饰的rGO / ZnO异质结构的H-2气敏特性,在室温下于紫外线辐射下进行了研究,并将其与在高工作温度下使用原始ZnO纳米结构观察到的相比。参照通常在等离子传感器中观察到的众所周知的“过度”情况,说明了一个合理的机制。

著录项

  • 来源
    《Sensors and Actuators 》 |2019年第7期| 666-675| 共10页
  • 作者单位

    King Fahd Univ Petr & Minerals, Ctr Res Excellence Nanotechnol CENT, Dhahran 31261, Saudi Arabia;

    King Fahd Univ Petr & Minerals, Phys Dept, Dhahran 31261, Saudi Arabia;

    King Fahd Univ Petr & Minerals, Ctr Res Excellence Renewable Energy, Dhahran 31261, Saudi Arabia;

    King Fahd Univ Petr & Minerals, Ctr Res Excellence Nanotechnol CENT, Dhahran 31261, Saudi Arabia|King Fahd Univ Petr & Minerals, Phys Dept, Dhahran 31261, Saudi Arabia;

    King Fahd Univ Petr & Minerals, Phys Dept, Dhahran 31261, Saudi Arabia;

    Univ Mysore, Ctr Mat Sci & Technol, PB 21, Manasagangotri 570006, Mysuru, India;

    King Fahd Univ Petr & Minerals, Ctr Res Excellence Nanotechnol CENT, Dhahran 31261, Saudi Arabia|King Fahd Univ Petr & Minerals, Phys Dept, Dhahran 31261, Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RT hydrogen sensor; ZnO; Pulsed laser ablation in liquid; Nanocomposite;

    机译:RT氢传感器ZnO脉冲激光烧蚀纳米复合材料;

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